PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Optimal combiners in pre-amplified optical wireless systems under medium-to-strong atmospheric turbulence

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this work we analytically investigate optimal combiners for pre-amplified diversity receivers that operate under medium-tostrongatmosphericturbulence. We first demonstrate that the combi ner performance is strongly affected by the existence of a signal-amplified spontaneous emission beat noise at the output of the photodetector. Due to the Signac dependent nature of noise, the optimal combi ner can be classified as a hybridone,of which performance is between the well-known equalgain and maximal-ratio combiner architectures. Having established the optimal design, we further assess the proposed combiner performance over gamma-gamma and negative-exponential fading environments.
Twórcy
autor
  • Department of Informatics and Telecommunications, University of Peloponnese, Tripoli 22131, Greece
  • Department of Informatics and Telecommunications, University of Peloponnese, Tripoli 22131, Greece
  • Department of Informatics and Telecommunications, University of Peloponnese, Tripoli 22131, Greece
autor
  • Faculty of Engineering, Ozyegin University, Istanbul 34662, Turkey
  • Faculty of Engineering and Environment, Northumbria University, Newcastle upon Tyne NE1 8ST, UK.
Bibliografia
  • [1] Abtahi, M., Lemieux, P., Mathlouthi, W., Rusch, L.A. (2006). Suppression of turbulence-induced scintillation in free-space optical communication systems using saturated optical amplifiers. 24(12), 4966–4973
  • [2] Andrews, L.C., Phillips, R.L. (2005). Laser beam propagation through random media. SPIE Press, Bellingham, Washington, 2 edition
  • [3] Anguita, A., Neifeld, M.A., Hildner, B., Vasic, B. (2010). Rateless codingon experimental temporally correlated FSO channels. 28(7):990–1002
  • [4] Barakat, R. (Aug 1988). Level-crossing statistics of aperture-integrated isotropic speckle. J. Opt. Soc. Am. A, 5(8), 1244–1247
  • [5] Bayaki, E., Schober, R., Michalopoulos, D.S. (2012). EDFA-based all-optical relaying in freespace optical systems. 60(12):3797–3807
  • [6] Datsikas,C.K.,Peppas,K.P.,Sagias,N.C.,Tombras, G.S. (2010). Serial free-space optical relaying communications over gamma-gamma atmospheric turbulence channels. IEEE/OSA Journal of Optical Communications and Networking, 2(8):576–586
  • [7] Hulea, M., Ghassemlooy, Z., Rajbhandari, S., Tang, X. (2014). Compensating for optical beam scattering and wandering in FSO communications. 32(7):1323–1328
  • [8] Humblet, P.A., Azizoglu, M. (1991). On the bit error rate of light wave systems with optical amplifiers. 9(11):1576–1582
  • [9] Khalighi, M.-A., Schwartz, N., Aitamer, N., Bourennane, S. (2009). Fading reduction by aperture averaging and spatial diversity in optical wireless systems. IEEE/OSA Journal of Optical Networking, 1(6):580–593
  • [10] Navidpour, S.M., Uysal, M., Kavehrad, M. (2007). BER performance of free-space optical transmission with spatial diversity. 6(8):2813–2819
  • [11] Olsson, N.A. (1989). Lightwave systems with optical amplifiers. 7(7):1071–1082
  • [12] Peppas, K.P., Lazarakis, F., Alexandridis, A., Dangakis, K.. (2012). Simple, accurate formula for the average bit error probability of multiple-input multiple-output free-space optical links over negative exponential turbulence channels. Opt. Lett., 37(15):3243–3245
  • [13] Polishuk, A., Arnon, S. (2004). Optimization of a laser satellite Communications system with an optical preamplifier. J. Opt. Soc. Am. A, 21(7):1307–1315
  • [14] Popoola,W.O.,Ghassemlooy,Z.(2009). BPSKsubcarrier intensity modulated free-space optical communications in atmospheric turbulence. 27(8):967– 973
  • [15] Razavi, M., Shapiro, J.H. (2005). Wireless optical communications via diversity reception and optical preamplification. 4(3):975–983
  • [16] Safari, M., Uysal, M. (2008). Relay-assisted freespace optical communication. 7(12):5441–5449
  • [17] Uysal, M., Li, J., Yu, M. (2006). Error rate performance analysis of coded free-space optical links over gamma-gamma atmospheric turbulence channels. 5(6):1229–1233
  • [18] Strömqvist Vetelino, F., Young, C., Andrews, L., Recolons, J. (2007). Aperture averaging effects on the probability density of irradiance fluctuations in moderate-to-strong turbulence. Appl. Opt., 46(11):2099–2108
  • [19] Wilson, S.G., Brandt-Pearce, M., Cao, Q., Baedke, M. (2005). Optical repetition MIMO transmission with multi-pulse PPM. 23(9):1901–1910
  • [20] Xu, F., Khalighi, A., Caussé, P., Bourennane, S. (2009). Channel coding and time-diversity for optical wireless links. Opt. Express, 17(2):872–887
  • [21] Yiannopoulos, K., Sagias, N., Boucouvalas, A.C., Uysal, M., Ghassemlooy, Z. (2016). Optimal combiners in optical wireless systems with spatial diversity and pre-amplification. In Communications (ICC), 2016 IEEE International Conference on
  • [22] Zhao,W.,Han,Y.,Yi,X.(2013). Errorperformance analysisforfsosystemswithdiversityreceptionand optical preamplification over gamma–gamma atmospheric turbulencje channels. Journal of Modern Optics, 60(13):1060–1068
  • [23] Zhu,X.,Kahn,J.M.(2003). Performanceboundsfor coded free-space optical communications through atmospheric turbulence channels. 51(8):1233–1239
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-de9f7838-4b91-4726-a6a8-4ca59e5b4e53
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.